首页> 美国卫生研究院文献>Microbes and Environments >Growth Rate of and Gene Expression in Bradyrhizobium diazoefficiens USDA110 due to a Mutation in blr7984 a TetR Family Transcriptional Regulator Gene
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Growth Rate of and Gene Expression in Bradyrhizobium diazoefficiens USDA110 due to a Mutation in blr7984 a TetR Family Transcriptional Regulator Gene

机译:TetR家族转录调节基因blr7984中的突变导致重氮根瘤菌USDA110的生长速率和基因表达

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摘要

Previous transcriptome analyses have suggested that a gene cluster including a transcriptional regulator (blr7984) of the tetracycline repressor family was markedly down-regulated in symbiosis. Since blr7984 is annotated to be the transcriptional repressor, we hypothesized that it is involved in the repression of genes in the genomic cluster including blr7984 in symbiotic bacteroids. In order to examine the function and involvement of the blr7984 gene in differentiation into bacteroids, we compared the free-living growth/symbiotic phenotype and gene expression between a blr7984-knockout mutant and the wild-type strain of Bradyrhizobium diazoefficiens USDA110. The mutant transiently increased the cell growth rate under free-living conditions and nodule numbers over those with the wild-type strain USDA110. The expression of three genes adjacent to the disrupted blr7984 gene was strongly up-regulated in the mutant in free-living and symbiotic cells. The mutant also induced the expression of genes for glutathione S-transferase, cytochrome c oxidases, ABC transporters, PTS sugar transport systems, and flagella synthesis under free-living conditions. bll7983 encoding glutathione S-transferase was up-regulated the most by the blr7984 disruption. Since redox regulation by glutathione is known to be involved in cell division in prokaryotes and eukaryotes, the strong expression of glutathione S-transferase encoded by the bll7983 gene may have caused redox changes in mutant cells, which resulted in higher rates of cell division.
机译:先前的转录组分析表明,包括四环素阻遏物家族的转录调节子(blr7984)的基因簇在共生中显着下调。由于blr7984被注释为转录​​阻遏物,因此我们假设它与共生类细菌中blr7984在内的基因组簇中基因的抑制有关。为了检查blr7984基因在分化为类细菌中的功能和参与程度,我们比较了blr7984-敲除突变体和重氮根瘤菌缓释菌株USDA110的自由生长/共生表型和基因表达。与具有野生型菌株USDA110的突变体相比,该突变体在自由生存条件和结节数下瞬时提高了细胞生长速率。在自由生活和共生细胞的突变体中,与破坏的blr7984基因相邻的三个基因的表达被上调。该突变体还诱导了谷胱甘肽S-转移酶,细胞色素c氧化酶,ABC转运蛋白,PTS糖转运系统和鞭毛在自由条件下合成的基因表达。编码谷胱甘肽S-转移酶的bll7983被blr7984破坏上调最多。由于已知谷胱甘肽对氧化还原的调节与原核生物和真核生物的细胞分裂有关,因此bll7983基因编码的谷胱甘肽S-转移酶的强表达可能引起突变细胞的氧化还原变化,从而导致更高的细胞分裂速度。

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